Show simple item record

dc.contributor.advisorGadeau, Alain-Pierre
dc.contributor.authorYAO, Qinyu
dc.contributor.otherHagedorn, Martin
dc.contributor.otherLaffargue, Muriel
dc.date2012-10-09
dc.date.accessioned2020-12-14T21:28:04Z
dc.date.available2020-12-14T21:28:04Z
dc.identifier.urihttp://www.theses.fr/2012BOR21935/abes
dc.identifier.urihttps://oskar-bordeaux.fr/handle/20.500.12278/23179
dc.identifier.nnt2012BOR21935
dc.description.abstractRecruitment of mural cells, i.e. pericytes and smooth muscle cells (SMC), is essential to improve the maturation of newly formed vessels. One of the major factors involved in this process is the endothelial cell-secreted Platelet-Derived Growth Factor BB (PDGF BB). Sonic hedgehog (Shh) has also been suggested to promote the formation of larger and more muscularized vessels, but the underlying mechanisms involved have not yet been elucidated. We first identified Shh as a target of PDGF BB and found that SMC respond to Shh not only by upregulating the Gli1-dependent canonical pathway, but also by activating ERK1/2 and PI3K-dependent non-canonical pathways. Moreover, we found that PDGF BB-induced SMC migration, involves Shh-dependent PI3K, ERK1/2 and Gli1 activation. In the mouse model of corneal angiogenesis, PDGF BB and Shh were expressed by endothelial cells and mural cells of VEGF-induced newly formed blood vessels, respectively. PDGF BB inhibition reduced Shh expression, confirming that Shh is a target of PDGF BB, as demonstrated by in vitro experiments. Finally, we found that inhibition of either PDGF BB or Shh signaling reduced NG2+ mural cell recruitment into neovessels and subsequently reduced the neo-vessel lifespan. In this work, we demonstrate, for the first time, that Shh is a key mediator of PDGF BB-induced mural cell migration and recruitment into neo-vessels and elucidates the molecular signaling pathway involved in this process.
dc.description.abstractEnRecruitment of mural cells, i.e. pericytes and smooth muscle cells (SMC), is essential to improve the maturation of newly formed vessels. One of the major factors involved in this process is the endothelial cell-secreted Platelet-Derived Growth Factor BB (PDGF BB). Sonic hedgehog (Shh) has also been suggested to promote the formation of larger and more muscularized vessels, but the underlying mechanisms involved have not yet been elucidated. We first identified Shh as a target of PDGF BB and found that SMC respond to Shh not only by upregulating the Gli1-dependent canonical pathway, but also by activating ERK1/2 and PI3K-dependent non-canonical pathways. Moreover, we found that PDGF BB-induced SMC migration, involves Shh-dependent PI3K, ERK1/2 and Gli1 activation. In the mouse model of corneal angiogenesis, PDGF BB and Shh were expressed by endothelial cells and mural cells of VEGF-induced newly formed blood vessels, respectively. PDGF BB inhibition reduced Shh expression, confirming that Shh is a target of PDGF BB, as demonstrated by in vitro experiments. Finally, we found that inhibition of either PDGF BB or Shh signaling reduced NG2+ mural cell recruitment into neovessels and subsequently reduced the neo-vessel lifespan. In this work, we demonstrate, for the first time, that Shh is a key mediator of PDGF BB-induced mural cell migration and recruitment into neo-vessels and elucidates the molecular signaling pathway involved in this process.
dc.language.isofr
dc.subjectMaturation de vaisseaux
dc.subjectRecrutement des cellules murales
dc.subjectMigration des CML
dc.subjectSonic Hedgehog
dc.subjectPDGF BB
dc.subject.enVessel maturation
dc.subject.enMural cell recruitment
dc.subject.enSMC migration
dc.subject.enSonic Hedgehog
dc.subject.enPDGF BB
dc.titleRôle de la protéine Sonic Hedgehog dans la migration des cellules musculaires lisses et le recrutement des cellules murales sur les néovaisseaux : implication dans l’action de PDGF BB
dc.title.enRole of Sonic Hedgehog in smooth muscle cell migration and mural cell recruitment onto the neovessels : involvement in PDGF BB action
dc.typeThèses de doctorat
dc.contributor.jurypresidentSavineau, Jean-Pierre
bordeaux.hal.laboratoriesThèses de l'Université de Bordeaux avant 2014*
bordeaux.institutionUniversité de Bordeaux
bordeaux.type.institutionBordeaux 2
bordeaux.thesis.disciplineSciences, technologie, santé. Biologie cellulaire et physiopathologie
bordeaux.ecole.doctoraleÉcole doctorale Sciences de la vie et de la santé (Bordeaux)
star.origin.linkhttps://www.theses.fr/2012BOR21935
dc.contributor.rapporteurFeige, Jean-Jacques
dc.contributor.rapporteurRuat, Martial
bordeaux.COinSctx_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rft.title=R%C3%B4le%20de%20la%20prot%C3%A9ine%20Sonic%20Hedgehog%20dans%20la%20migration%20des%20cellules%20musculaires%20lisses%20et%20le%20recrutement%20des%20cellules%20murales%&rft.atitle=R%C3%B4le%20de%20la%20prot%C3%A9ine%20Sonic%20Hedgehog%20dans%20la%20migration%20des%20cellules%20musculaires%20lisses%20et%20le%20recrutement%20des%20cellules%20murales&rft.au=YAO,%20Qinyu&rft.genre=unknown


Files in this item

FilesSizeFormatView

There are no files associated with this item.

This item appears in the following Collection(s)

Show simple item record